Embryonic Mice

Embryonic mice are developing mouse organisms before birth, providing a tractable model for studying vertebrate development, genetics, and disease. Researchers examine how embryonic cells divide, differentiate, migrate, and organize into tissues, while genetic engineering can modify specific genes or introduce reporter sequences to track these processes. In bioengineering, mouse embryos and embryonic stem cells support the development of gene-editing methods, tissue-engineering strategies, developmental models, and preclinical evaluations of biomaterials or therapies. Findings from these systems help link molecular mechanisms to tissue formation and guide the design of engineered biological systems, although species-specific differences must be considered when translating results.

Embryonic Mice - Related Videos

Research

JoVE Journal - Immunology and Infection

A Method for Labeling Vasculature in Embryonic Mice

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Cited by 14 •

2011

This article describes a method for labeling embryonic skin and thymus blood vessels.

Measuring Left Ventricular Pressure in Late Embryonic and Neonatal Mice

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Cited by 18 •

2012

Measuring left ventricular pressure (LV) in embryonic and neonatal mice is described. Pressure is measured by inserting a needle connected to a fluid-filled transducer into the LV under ultrasound guidance. Care must be taken to maintain normal cardiac function during the experimental protocol.

A System for ex vivo Culturing of Embryonic Pancreas

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Cited by 23 •

2012

Here, we describe a method for isolation, culture and manipulation of mouse embryonic pancreas. This represents an excellent ex vivo system for studying various aspects of pancreatic development, including morphogenesis, differentiation and growth. Pancreatic bud explants can be cultured for several days and used in a range of different applications, including whole-mount immunofluorescence and live imaging.

Education

JoVE Core - Biology

Embryonic Stem Cells

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2019

Embryonic stem (ES) cells are undifferentiated pluripotent cells, meaning they can produce any cell type in the body. This gives them tremendous potential in science and medicine since they can generate specific cell types for use in research or to replace body cells lost due to damage or disease. Origin ES cells are present in the inner cell mass of an embryo at the blastocyst stage, which occurs at about 3–5 days after fertilization in humans before the embryo is implanted in the uterus.

Conditional Genetic Transsynaptic Tracing in the Embryonic Mouse Brain

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Cited by 5 •

2014

Capitalizing on a binary genetic strategy we provide a detailed protocol for neural circuit tracing in mice that express complementary transsynaptic tracers after Cre-mediated recombination. Because cell-specific tracer production is genetically encoded, our experimental approach is suitable to study the formation and maturation of neural circuitry during murine embryonic brain development at a single cell resolution.

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